Search Results - "St Martin, Steven"
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Effect of shade on leaf photosynthetic capacity, light-intercepting, electron transfer and energy distribution of soybeans
Published in Plant growth regulation (01-12-2017)“…Soybean is a widely cultivated crop, however, its growth and development is very sensitive to light. Shade-tolerance of cultivar is very important in…”
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2
Global transcription profiling reveals multiple sugar signal transduction mechanisms in Arabidopsis
Published in The Plant cell (01-08-2004)“…Complex and interconnected signaling networks allow organisms to control cell division, growth, differentiation, or programmed cell death in response to…”
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3
Continuous-cropping-tolerant soybean cultivars alleviate continuous cropping obstacles by improving structure and function of rhizosphere microorganisms
Published in Frontiers in microbiology (04-01-2023)“…Soybean continuous cropping will change soil microorganisms and cause continuous cropping obstacles, resulting in a significant yield decline. Different…”
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4
Dissection of two soybean QTL conferring partial resistance to Phytophthora sojae through sequence and gene expression analysis
Published in BMC genomics (28-08-2012)“…Phytophthora sojae is the primary pathogen of soybeans that are grown on poorly drained soils. Race-specific resistance to P. sojae in soybean is…”
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New Plant Introductions with Resistance to the Soybean Aphid
Published in Crop science (01-05-2008)“…The soybean aphid (SA; Aphis glycines Matsumura) was first found in the northern soybean [Glycine max (L.) Merr.] growing regions of the United States in 2000…”
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6
Comparison of Phenotypic Methods and Yield Contributions of Quantitative Trait Loci for Partial Resistance to Phytophthora sojae in Soybean
Published in Crop science (01-03-2012)“…In several host–pathogen systems, the detection of an individual quantitative trait locus (QTL) differed depending on the specific pathogen isolate or…”
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7
Agronomic traits of soybean cultivars released in different decades after grafting record‐yield cultivar as rootstock
Published in Plant breeding (01-04-2017)“…Breeders have seldom considered the selection for root traits during the genetic improvement in soybean. It is hypothesized that grain yield would be increased…”
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Soybean Germplasm Resistant to Pythium irregulare and Molecular Mapping of Resistance Quantitative Trait Loci derived from the Soybean Accession PI 424354
Published in Crop science (01-05-2013)“…ABSTRACT Pythium irregulare Buisman is an important seed and seedling pathogen of many hosts including soybean [Glycine max (L.) Merr.] and has been…”
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Identification of soybean genotypes resistant to Fusarium graminearum and genetic mapping of resistance quantitative trait loci in the cultivar conrad
Published in Crop science (01-09-2012)“…Fusarium graminearum, a necrotroph, has emerged as an important soybean [Glycine max (L.) Merr.] seedling pathogen in Ohio. An effective management strategy…”
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Genetic Mapping of QTLs Underlying Partial Resistance to Sclerotinia sclerotiorum in Soybean PI 391589A and PI 391589B
Published in Crop science (01-05-2008)“…Soybean [Glycine max (L.) Merr.] PI 391589B, a selection from PI 391589A was recently identified as a new source of resistance to Sclerotinia sclerotiorum…”
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Infection and genotype remodel the entire soybean transcriptome
Published in BMC genomics (26-01-2009)“…High throughput methods, such as high density oligonucleotide microarray measurements of mRNA levels, are popular and critical to genome scale analysis and…”
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12
Rps8 maps to a resistance gene rich region on soybean molecular linkage group F
Published in Crop science (01-01-2006)“…Phytophthora root and stem rot caused by Phytophthora sojae M.J. Kaufmann & J.W. Gerdemann is a serious disease of soybean [Glycine max (L.) Merr.] worldwide…”
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13
Identification of a QTL Associated with Tolerance of Soybean to Soil Waterlogging
Published in Crop science (01-07-2001)“…Soil waterlogging is a major environmental stress that suppresses soybean [Glycine max (L.) Merr.] growth and yield. Our objective was to identify quantitative…”
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14
Analysis of Genes Underlying Soybean Quantitative Trait Loci Conferring Partial Resistance to Phytophthora sojae
Published in The plant genome (01-07-2010)“…Few quantitative trait loci (QTL) have been mapped for the expression of partial resistance to Phytophthora sojae in soybean and very little is known about the…”
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15
Effect of Grafting on the Flowering of Near-Isogenic Lines of Soybean
Published in Crop science (01-09-2003)“…Grafting of soybean [Glycine max (L.) Merr.] genotypes differing in time to flower has been used to study translocation of flowering hormones and also as a…”
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Isoflavone profiles, phenol content, and antioxidant activity of soybean seeds as influenced by cultivar and growing location in Ohio
Published in Journal of the science of food and agriculture (01-05-2007)“…Isoflavone levels and isoflavone chemical composition in soybeans vary between planting locations although the exact factors which control isoflavone…”
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Comparison of three procedures for early generation testing of soybean
Published in Crop science (01-05-2002)“…Early generation testing as a breeding procedure for autogamous crops consists of testing heterogeneous families, followed by selection of homozygous lines…”
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Registration of ‘Summit,’ a High‐Yielding Soybean with Race‐Specific Resistance to Phytophthora sojae
Published in Journal of plant registrations (01-01-2013)“…Phytophthora sojae Kauffmann and Gerdemann, the causal agent of Phytophthora root and stem rot, may result in severe losses in soybean fields planted with…”
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19
Using AFLP markers to determine the genomic contribution of parents to populations
Published in Crop science (01-07-1997)“…Estimates of proportions or parental contribution to germplasm populations are useful to breeders. The objective of this research was to assess the ability of…”
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Effect of Preplant Fertilizer on Agronomic and Physiological Traits of Soybean Cultivars from Different Breeding Programs
Published in Agricultural sciences in China (01-11-2010)“…Understanding the changes in agronomic and physiological traits associated with yield genetic gain is important for soybean production and future breeding…”
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